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首页> 外文期刊>Journal of Vibration and Acoustics >Residual Vibration Suppression for Duffing Nonlinear Systems With Electromagnetical Actuation Using Nonlinear Command Shaping Techniques
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Residual Vibration Suppression for Duffing Nonlinear Systems With Electromagnetical Actuation Using Nonlinear Command Shaping Techniques

机译:利用非线性指令整形技术抑制具有电磁驱动力的Duffing非线性系统的残余振动

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Residual vibration control is crucial for numerous applications in precision machinery with negligible damping such as magnetically actuated systems. In certain magnetically actuated applications, the systems could also be highly nonlinear and conditionally stable. Although traditional command shaping techniques work well for linear and weakly nonlinear systems, they show little effects for dealing with systems with both strong structural and actuation nonlinearities. In this paper, a general input shaper design methodology for single degree of freedom systems with both Duffing spring and electromagnetic forcing nonlinearities is successfully devised using an energy approach. Following this method, two-step and three-step shapers are developed, which in the linear limit reduce to the traditional zero-vibration (ZV) and zero-vibration-and-derivative (ZVD) shapers, respectively. The robustness of these nonlinear shapers is investigated numerically through several case studies and the results show that the three-step shaper is sufficiently robust to resist significant amounts of parameter variations without exciting significant residual vibration. The two-step shaper, however, is somewhat less robust with respect to parameter variations. Meanwhile, an electromagnetically driven Duffing mechanical system is also constructed so that the performances and robustness of the nonlinear shapers in vibration suppression can be examined. It is shown that the nonlinear shapers result in a significant improvement in residual vibration suppression and settling time reduction in comparison with the traditional linearized ZV and ZVD shapers.
机译:残余振动控制对于阻尼可忽略不计的精密机械中的许多应用(例如磁致动系统)至关重要。在某些电磁驱动的应用中,系统也可能是高度非线性且条件稳定的。尽管传统的命令整形技术在线性和弱非线性系统中均能很好地发挥作用,但是它们对于处理具有强结构和驱动非线性的系统几乎没有效果。在本文中,使用能量方法成功地设计了具有Duffing弹簧和电磁强迫非线性的单自由度系统的通用输入成形器设计方法。按照这种方法,开发了两步和三步成形器,它们在线性极限下分别减小到传统的零振动(ZV)和零振动与微分(ZVD)成形器。通过几个案例研究,对这些非线性整形器的鲁棒性进行了数值研究,结果表明,三步整形器具有足够的鲁棒性,可以抵抗大量的参数变化而不会引起明显的残余振动。然而,两步整形器在参数变化方面不那么健壮。同时,还构造了电磁驱动的Duffing机械系统,以便可以研究非线性整形器在抑制振动方面的性能和鲁棒性。结果表明,与传统的线性ZV和ZVD成形器相比,非线性成形器可显着改善残余振动抑制并减少建立时间。

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